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Wastewater engineering treatment: disposal and reuse

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The article was published on 1991-01-01 and is currently open access. It has received 3805 citations till now. The article focuses on the topics: Wastewater engineering & Reuse.

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Performance of Laboratory-Scale Wetlands Planted with Tropical Ornamental Plants to Treat Domestic Wastewater

TL;DR: In this article, an innovative wastewater treatment system that consists of a constructed subsurface flow wetland planted with ornamental flowers of high market value was proposed, where five different species of ornamental plants were studied from September 2004 to January 2005.
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Highly effective reduction of fecal indicator bacteria counts in an ecologically engineered municipal wastewater and acid mine drainage passive co-treatment system

TL;DR: Although this co-treatment regime reduced FIB concentrations more effectively than conventional active or passive MWW treatment systems, further work can be done to optimize the efficiency of treating these wastes simultaneously.
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Application of a residential end-use model for estimating cold and hot water demand, wastewater flow and salinity

HE Jacobs, +1 more
- 01 Jul 2004 - 
TL;DR: In this article, an end-use model for residential water demand and return flow is presented to confirm a few commonly observed water demand patterns, such as seasonal variation in demand, the positive correlation between average annual daily water consumption and stand size, and the increase in water consumption, hot water demand, and wastewater flow with an increase in household size.
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Cavitation-based pre-treatment of wastewater and waste sludge for improvement in the performance of biological processes: A review

TL;DR: A critical review on cavitation-based pre-treatment for subsequent biological oxidation process as well as for the treatment and modification of waste sludge for subsequent anaerobic digestion is presented in this article.
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Temperature-dependent and surface specific formaldehyde degradation in submerged biofilters

TL;DR: The results allow calculation on biofilter removal capacity of formaldehyde, applicable for developing biofilters ensuring sufficient formaldehyde removal in effluent water, and can be used to predict actual treatment and effluent concentration with more accuracy.